Cavitation: a blessing in disguise? New method to establish vulnerability curves and assess hydraulic capacitance of woody tissues.
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Veerle Cnudde | Manuel Dierick | Kathy Steppe | V. Cnudde | K. Steppe | M. Dierick | Lidewei L Vergeynst | Jan A N Bogaerts | Jan A. N. Bogaerts
[1] A. Jacobsen,et al. No evidence for an open vessel effect in centrifuge-based vulnerability curves of a long-vesselled liana (Vitis vinifera). , 2012, The New phytologist.
[2] E. Nikinmaa,et al. Field measurements of ultrasonic acoustic emissions and stem diameter variations. New insight into the relationship between xylem tensions and embolism. , 2005, Tree physiology.
[3] Brendan Choat,et al. Measurement of vulnerability to water stress-induced cavitation in grapevine: a comparison of four techniques applied to a long-vesseled species. , 2010, Plant, cell & environment.
[4] M. Gullo,et al. Water storage in the wood and xylem cavitation in 1‐year‐old twigs of Populus deltoides Bartr. , 1992 .
[5] W. R. N. Edwards,et al. Relations between water content, potential and permeability in stems of conifers , 1982 .
[6] A. Dai. Drought under global warming: a review , 2011 .
[7] G. Goldstein,et al. Biophysical properties and functional significance of stem water storage tissues in Neotropical savanna trees. , 2007, Plant, cell & environment.
[8] M. M. Alsina,et al. Centrifuge technique consistently overestimates vulnerability to water stress-induced cavitation in grapevines as confirmed with high-resolution computed tomography. , 2012, The New phytologist.
[9] Veerle Cnudde,et al. HECTOR: A 240kV micro-CT setup optimized for research , 2013 .
[10] Kevin W Eliceiri,et al. NIH Image to ImageJ: 25 years of image analysis , 2012, Nature Methods.
[11] Wim Dewulf,et al. Sense and non-sense of beam hardening correction in CT metrology , 2012 .
[12] Daniel M. Johnson,et al. Xylem hydraulic safety margins in woody plants: coordination of stomatal control of xylem tension with hydraulic capacitance , 2009 .
[13] V. Cnudde,et al. Software tools for quantification of X-ray microtomography at the UGCT , 2007 .
[14] V. Bucur,et al. Attenuation of ultrasound in solid wood , 1992 .
[15] H. Cochard,et al. Xylem embolism threshold for catastrophic hydraulic failure in angiosperm trees. , 2013, Tree physiology.
[16] N. McDowell,et al. How do trees die? A test of the hydraulic failure and carbon starvation hypotheses , 2013, Plant, cell & environment.
[17] Julian A. Licata,et al. Time series diagnosis of tree hydraulic characteristics. , 2004, Tree physiology.
[18] Masato Yoshida,et al. Strains inside xylem and inner bark of a stem submitted to a change in hydrostatic pressure , 2006, Trees.
[19] Bo Karlsson,et al. Extraction of features from ultrasound acoustic emissions: a tool to assess the hydraulic vulnerability of Norway spruce trunkwood? , 2006, The New phytologist.
[20] M. Tyree,et al. Water-storage capacity ofThuja, Tsuga andAcer stems measured by dehydration isotherms , 1990, Planta.
[21] Stéphane Herbette,et al. Water stress-induced xylem hydraulic failure is a causal factor of tree mortality in beech and poplar. , 2013, Annals of botany.
[22] Peter Hietz,et al. An improved method and data analysis for ultrasound acoustic emissions and xylem vulnerability in conifer wood. , 2012, Physiologia plantarum.
[23] J. Sperry,et al. Comparative analysis of end wall resistivity in xylem conduits , 2005 .
[24] E. Nikinmaa,et al. Capacitive effect of cavitation in xylem conduits: results from a dynamic model. , 2009, Plant, cell & environment.
[25] E T Ahrens,et al. In vivo observation of cavitation and embolism repair using magnetic resonance imaging. , 2001, Plant physiology.
[26] A Nardini,et al. Xylem cavitation in the leaf of Prunus laurocerasus and its impact on leaf hydraulics. , 2001, Plant physiology.
[27] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[28] G. Goldstein,et al. Control of transpiration from the upper canopy of a tropical forest: the role of stomatal, boundary layer and hydraulic architecture components , 1997 .
[29] A. Nardini,et al. Global convergence in the vulnerability of forests to drought , 2012, Nature.
[30] J. Sperry,et al. Drought experience and cavitation resistance in six shrubs from the Great Basin, Utah , 2000 .
[31] R. Lemeur,et al. An experimental system for analysis of the dynamic sap-flow characteristics in young trees: results of a beech tree. , 2004, Functional plant biology : FPB.
[32] G. Goldstein,et al. Whole-tree water transport scales with sapwood capacitance in tropical forest canopy trees , 2003 .
[33] G. Goldstein,et al. Midday stomatal conductance is more related to stem rather than leaf water status in subtropical deciduous and evergreen broadleaf trees. , 2013, Plant, cell & environment.
[34] M. Muggeo,et al. segmented: An R package to Fit Regression Models with Broken-Line Relationships , 2008 .
[35] Brendan Choat,et al. In Vivo Visualizations of Drought-Induced Embolism Spread in Vitis vinifera1[W][OA] , 2013, Plant Physiology.
[36] J. Grace,et al. Continuous measurements of water tensions in the xylem of trees based on the elastic properties of wood , 1997, Planta.
[37] D. R. Lee. Elasticity of Phloem Tissues1 , 1981 .
[38] P. Hietz,et al. Wood diameter indicates diurnal and long-term patterns of xylem water potential in Norway spruce , 2001, Trees.
[39] Daniel M. Johnson,et al. Climate-related trends in sapwood biophysical properties in two conifers: avoidance of hydraulic dysfunction through coordinated adjustments in xylem efficiency, safety and capacitance. , 2011, Plant, cell & environment.
[40] Bo Karlsson,et al. Shrinkage processes in standard-size Norway spruce wood specimens with different vulnerability to cavitation. , 2009, Tree physiology.
[41] P. Campanello,et al. Coordination of leaf and stem water transport properties in tropical forest trees , 2008, Oecologia.
[42] S. Tsubaki,et al. Growth-dependent chemical and mechanical properties of cuticular membranes from leaves of Sonneratia alba. , 2012, Plant, cell & environment.
[43] R. Murphy,et al. A New Pressure Probe Method to Determine the Average Volumetric Elastic Modulus of Cells in Plant Tissue , 1995, Plant physiology.
[44] M. Gullo,et al. Different vulnerabilities of Quercus ilex L. to freeze- and summer drought-induced xylem embolism: an ecological interpretation , 1993 .
[45] T. Brodribb,et al. Hydraulic Failure Defines the Recovery and Point of Death in Water-Stressed Conifers[OA] , 2008, Plant Physiology.